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Data Acquisition System of 16-channel EEG Based on ATSAM3X8E ARM Cortex-M3 32-bit Microcontroller and ADS1299

机译:基于ATSAM3X8E ARM Cortex-M3 32位微控制器和ADS1299的16通道脑电图数据采集系统

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The prototype of the EEG (electroencephalogram) instrumentation systems has been developed based on 32-bit microcontrollers of Cortex-M3 ATSAM3X8E and Analog Front-End (AFE) ADS1299 (Texas Instruments, USA), and also consists of 16-channel dry-electrodes in the form of EEG head-caps. The ADS1299-AFE has been designed in a double-layer format PCB (Print Circuit Board) with daisy-chain configuration. The communication protocol of the prototype was based on SPI (Serial Peripheral Interface) and tested using USB SPI-Logic Analyzer Hantek4032L (Qingdao Hantek Electronic, China). The acquired data of the 16-channel from this prototype has been successfully transferred to a PC (Personal Computer) with accuracy greater than 91 %. The data acquisition system has been visualized with time-domain format in the multi-graph plotter, the frequency-domain based on FFT (Fast Fourier Transform) calculation, and also brain-mapping display of 16-channel. The GUI (Graphical User Interface) has been developed based on OpenBCI (Brain Computer Interface) using Java Processing and also can be stored of data in the *.txt format. Instrumentation systems have been tested in the frequency range of 1-50 Hz using Mini Sim 330 EEG Simulator (NETECH, USA). The validation process has been done with different frequency of 0.1 Hz, 2 Hz, 5 Hz, and 50 Hz, and difference voltage amplitudes of 10 μV, 30 μV, 50 μV, 100 μV, 500 μV, 1 mV, 2 mV and 2.5 mV. However, the acquisition system was not optimal at a frequency of 0.1 Hz and for amplitude potentials of over 1 mV had differences of the order 10 μV.
机译:已基于Cortex-M3 Atsam3x8e和模拟前端(AFE)ADS1299(德州仪器,USA)的32位微控制器开发了EEG(脑电图)仪器仪器系统的原型,也包括16通道干电极组成以脑电图的形式。 ADS1299-AFE采用双层格式PCB(打印电路板)设计,具有菊花链配置。原型的通信协议基于SPI(串行外围界面)和使用USB SPI-Logic Analyzer Hantek4032L(中国青岛宾夕法尼亚电子)进行测试。从该原型的16通道的获取数据已成功转移到PC(个人计算机),精度大于91%。数据采集​​系统已经在多图绘图仪中的时域格式,基于FFT(快速傅里叶变换)计算的频域,以及16通道的脑部映射显示。 GUI(图形用户界面)是基于使用Java处理的OpenBCI(Brain Computer接口)开发的,也可以以* .txt格式存储数据。使用Mini SIM 330 EEG模拟器(Netech,USA)在1-50 Hz的频率范围内测试了仪器。验证过程已经采用0.1Hz,2Hz,5Hz,50Hz的不同频率进行,差电压幅度为10μV,30μV,50μV,100μV,500μV,1mV,2mV和2.5 MV。然而,采集系统以0.1Hz的频率不适,并且对于超过1mV的幅度电位具有10μV的差异。

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